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An hr-adaptive boundary element for wear free-surface problems

机译:用于磨损自由表面问题的hr自适应边界元素

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An hr-adaptive remising method is developed for nonlinear 2-D analysis of the free-surface on water. In order to approximate velocity potential and boundary conditions imposed on the free surface, boundary element method and weighted residual method are employed. Weighted average of error estimators of these two approximation methods is introduced on the free surface and unique optimum mesh is obtained based on the averaged-error estimator. In the proposed method, the role of h-process is to decide a priori the number of elements required to satisfy an error tolerance. Thus, the h-process has no need to select some elements which have poor accuracy, nor to refine these elements. Optimization of the element distribution is carried out by the r-process for the number of elements decided by the h-process. The proposed method is applied to sloshing in a rectangular container and forced oscillation in a trapezoidal container. Through these analyses, the performance and efficiency fo the hr-method are investigated.
机译:针对水上自由表面的非线性二维分析,开发了一种hr自适应去杂方法。为了近似施加在自由表面上的速度势和边界条件,采用边界元法和加权残差法。在自由表面上引入这两种近似方法的误差估计器的加权平均值,并基于平均误差估计器获得唯一的最佳网格。在提出的方法中,h过程的作用是先验确定满足误差容限所需的元素数量。因此,h过程无需选择某些精度较差的元素,也无需精炼这些元素。对于由h过程决定的元素数量,可以通过r过程对元素分布进行优化。所提出的方法适用于在矩形容器中晃动和在梯形容器中强迫振荡。通过这些分析,研究了hr方法的性能和效率。

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